Luno-Bilbao C, Vielma N, Veiga A, Ausejo S, Peña G, Iturriza I
CEIT-Basque Research and Technology Alliance (BRTA), Manuel Lardizábal 15, 20018, Donostia-San Sebastián, Spain.
Universidad de Navarra, Tecnun, Manuel Lardizábal 13, 20018, Donostia-San Sebastián, Spain.
Heliyon. 2023 Feb 20;9(3):e13931. doi: 10.1016/j.heliyon.2023.e13931. eCollection 2023 Mar.
The sinterability of a commercial Fe-Cu pre-alloyed powder, designed to be used as a metallic bond in diamond impregnated tools, has been greatly analyzed by combining dilatometry, computational thermodynamic calculations, and microstructural analysis. The effect of sintering temperature and alloying elements such as graphite and iron phosphide have been taken into consideration in order to demonstrate the capability of tailoring final properties through different strategies, and dilatometry and microstructural analysis have been used to understand the densification process of the alloys. Solid phase sintering was the mechanism taking place during thermal cycle. In fact, a liquid phase appears but because of the high densification level at that time mechanisms associated with LPS do not contribute to densification. Discussion about mechanical properties has been related to key microstructural phenomena, i.e., grain growth, phase transformation, precipitation, and solid solution. Obtained hardness ranged from 83 HRB to 106 HRB with yield stresses between 450 MPa and 700 MPa and elongations above 3%, while final tensile properties similar to those obtained by cobalt-based powders processed by hot pressing were also obtained.
一种旨在用作金刚石浸渍工具中金属结合剂的商用铁铜预合金粉末的烧结性,已通过结合热膨胀法、计算热力学计算和微观结构分析进行了深入分析。考虑了烧结温度以及石墨和磷化铁等合金元素的影响,以证明通过不同策略调整最终性能的能力,并利用热膨胀法和微观结构分析来了解合金的致密化过程。固相烧结是热循环过程中发生的机制。实际上,会出现液相,但由于当时的高密度水平,与液相烧结相关的机制对致密化没有贡献。关于力学性能的讨论与关键的微观结构现象有关,即晶粒生长、相变、析出和固溶。获得的硬度范围为83 HRB至106 HRB,屈服应力在450 MPa至700 MPa之间,伸长率超过3%,同时还获得了与通过热压加工的钴基粉末相似的最终拉伸性能。